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Current fluctuations in quantum absorption refrigerators

机译:量子吸收冰箱中的电流波动

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摘要

Absorption refrigerators transfer thermal energy from a cold bath to a hot bath without input power by utilizing heat from an additional “work” reservoir. Particularly interesting is a three-level design for a quantum absorption refrigerator, which can be optimized to reach the maximal (Carnot) cooling efficiency. Previous studies of threelevel chillers focused on the behavior of the averaged cooling current. Here, we go beyond that and study the full counting statistics of heat exchange in a three-level chiller model.We explain howto obtain the complete cumulant generating function of the refrigerator in a steady state, then derive a partial cumulant generating function, which yields closed-form expressions for both the averaged cooling current and its noise. Our analytical results and simulations are beneficial for the design of nanoscale engines and cooling systems far from equilibrium, with their performance optimized according to different criteria, efficiency, power, fluctuations, and dissipation.
机译:吸收冰箱通过利用来自附加“工作”储层的热量,从冷浴将热能从冷浴传递到热浴,而无需输入动力。特别有趣的是量子吸收冰箱的三级设计,可以优化以达到最大(Carnot)冷却效率。以前的荆棘冷却器的研究专注于平均冷却电流的行为。在这里,我们超越了,并研究了三级冷却模型中的热交换的完整计数统计。我们解释了如何在稳定状态下获得冰箱的完全累积发电功能,然后导出部分累积发电功能,从而产生平均冷却电流的闭合表达式及其噪声。我们的分析结果和模拟对于纳米级发动机和远离均衡的冷却系统的设计有益,它们的性能根据不同的标准,效率,功率,波动和耗散优化。

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